Questions

When a particle oscillates in a simple harmonic motion?

When a particle oscillates in a simple harmonic motion?

When a particle oscillates simple harmonically, its kinetic energy varies periodically.

What is the frequency of kinetic energy in simple harmonic motion?

As we know, frequency of SHM is reciprocal of time period, so frequency of SHM is 1/t. But frequency of kinetic energy of body is twice its frequency of SHM. Hence, the frequency of the kinetic energy of a body in SHM is 2/t.

What is a simple harmonic motion explain the simple harmonic motion using a spring?

Simple harmonic motion can serve as a mathematical model for a variety of motions, but is typified by the oscillation of a mass on a spring when it is subject to the linear elastic restoring force given by Hooke’s law. The motion is sinusoidal in time and demonstrates a single resonant frequency.

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What would be the angular frequency of the kinetic energy oscillations?

The angular frequency ω is given by ω = 2π/T. The angular frequency is measured in radians per second. The inverse of the period is the frequency f = 1/T. The frequency f = 1/T = ω/2π of the motion gives the number of complete oscillations per unit time.

Is the maximum velocity and acceleration of a particle executing SHM are equal in magnitude the time period will be?

If the maximum velocity and acceleration of a particle executing SHM are equal in magnitude the time period will be 1.57 s.

What is the relation between frequency and kinetic energy?

the kinetic energy of the electrons is linearly proportional to the frequency of the incident radiation above a threshold value of ν0 (no current is observed below ν0), and the kinetic energy is independent of the intensity of the radiation.

What would be the relation between kinetic energy and potential energy during the oscillations?

During the oscillations, the total energy is constant and equal to the sum of the potential energy and the kinetic energy of the system, ETotal=12kx2+12mv2=12kA2.